Literature DB >> 17073667

Voltage-gated sodium channels: new targets in cancer therapy?

Sébastien Roger1, Marie Potier, Christophe Vandier, Pierre Besson, Jean-Yves Le Guennec.   

Abstract

Early detection and treatment of cancers have increased survival and improved clinical outcome. The development of metastases is often associated with a poor prognostic of survival. Finding early markers of metastasis and developing new therapies against their development is a great challenge. Since a few years, there is more evidence that ionic channels are involved in the oncogenic process. Among these, voltage-gated sodium channels expressed in non-nervous or non-muscular organs are often associated with the metastatic behaviour of different cancers. The aim of this review is to describe the current knowledge on the functional expression of voltage-gated sodium channels and their biological roles in different cancers such as prostate, breast, lung (small cells and non-small cells) and leukaemia. In the conclusion, we develop conceptual approaches to understand how such channels can be involved in the metastatic process and conclude that blockers targeted toward these channels are promising new therapeutic solutions against metastatic cancers.

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Year:  2006        PMID: 17073667     DOI: 10.2174/138161206778522047

Source DB:  PubMed          Journal:  Curr Pharm Des        ISSN: 1381-6128            Impact factor:   3.116


  38 in total

1.  LSD1 Substrate Binding and Gene Expression Are Affected by HDAC1-Mediated Deacetylation.

Authors:  Dhanusha A Nalawansha; Mary Kay H Pflum
Journal:  ACS Chem Biol       Date:  2016-12-15       Impact factor: 5.100

2.  Intracellular calcium oscillations in strongly metastatic human breast and prostate cancer cells: control by voltage-gated sodium channel activity.

Authors:  Nahit Rizaner; Rustem Onkal; Scott P Fraser; Alessandro Pristerá; Kenji Okuse; Mustafa B A Djamgoz
Journal:  Eur Biophys J       Date:  2016-09-24       Impact factor: 1.733

3.  Ion channels as targets for cancer therapy.

Authors:  Minghua Li; Zhi-Gang Xiong
Journal:  Int J Physiol Pathophysiol Pharmacol       Date:  2011-06-27

4.  TRPM8 promotes aggressiveness of breast cancer cells by regulating EMT via activating AKT/GSK-3β pathway.

Authors:  Jinxin Liu; Yizhi Chen; Shuai Shuai; Dapeng Ding; Rong Li; Rongcheng Luo
Journal:  Tumour Biol       Date:  2014-06-06

5.  Voltage-gated Na+ channel SCN5A is a key regulator of a gene transcriptional network that controls colon cancer invasion.

Authors:  Carrie D House; Charles J Vaske; Arnold M Schwartz; Vincent Obias; Bryan Frank; Truong Luu; Narine Sarvazyan; Rosalyn Irby; Robert L Strausberg; Tim G Hales; Joshua M Stuart; Norman H Lee
Journal:  Cancer Res       Date:  2010-07-22       Impact factor: 12.701

6.  Discovery and evaluation of nNav1.5 sodium channel blockers with potent cell invasion inhibitory activity in breast cancer cells.

Authors:  Shilpa Dutta; Osbaldo Lopez Charcas; Samuel Tanner; Frédéric Gradek; Virginie Driffort; Sébastien Roger; Katri Selander; Sadanandan E Velu; Wayne Brouillette
Journal:  Bioorg Med Chem       Date:  2018-04-03       Impact factor: 3.641

7.  Voltage-gated Sodium Channel Activity Promotes Cysteine Cathepsin-dependent Invasiveness and Colony Growth of Human Cancer Cells.

Authors:  Ludovic Gillet; Sébastien Roger; Pierre Besson; Fabien Lecaille; Jacques Gore; Philippe Bougnoux; Gilles Lalmanach; Jean-Yves Le Guennec
Journal:  J Biol Chem       Date:  2009-01-28       Impact factor: 5.157

Review 8.  Ion channels: functional expression and therapeutic potential in cancer. Colloquium on Ion Channels and Cancer.

Authors:  Scott P Fraser; Luis A Pardo
Journal:  EMBO Rep       Date:  2008-05-02       Impact factor: 8.807

9.  Fractal analysis and ionic dependence of endocytotic membrane activity of human breast cancer cells.

Authors:  Monika Krasowska; Zbigniew J Grzywna; Maria E Mycielska; Mustafa B A Djamgoz
Journal:  Eur Biophys J       Date:  2009-07-18       Impact factor: 1.733

10.  Functional expression of voltage-gated sodium channels Nav1.5 in human breast cancer cell line MDA-MB-231.

Authors:  Rui Gao; Jing Wang; Yi Shen; Ming Lei; Zehua Wang
Journal:  J Huazhong Univ Sci Technolog Med Sci       Date:  2009-02-18
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